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Influence of surface oxygen vacancies on the LPG sensing response and the gas selectivity of Nd-doped SnO_2 nanoparticulate thin films

机译:表面氧空位对LPD传感响应和Nd掺杂SnO_2纳米颗粒薄膜气体选择性的影响

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摘要

Nanostructured 0.1 to 6 wt% of Neodymium (Nd) doped SnO2 thin films are deposited by nebulizer assisted spray pyrolysis process to investigate the gas sensing ability. X-ray diffraction analyses suggest that moderate addition of Nd facilitates the crystalline growth of films leading to lattice strain and substantial increase of the oxygen vacancies, to get modified the charge transport through the grains. The 3 wt% Nd doped films grow in (301), (200) and (110) preferred orientation, which is supported by Transmission Electron Micrograph. The Field Emission Scanning Micrographs reveal changes in film morphology comprising of differently sized agglomerated particles. The AFM images present the possibility of regulation of surface roughness via Nd doping. The 3 wt% Nd doped film shows maximum response of 99.8% in 500 ppm of LPG with remarkable response and recovery times of 5 s and 10 s respectively, at an operating temperature of 350 degrees C. The LPG response persists with a value of 63%, even at a reduced operating temperature of 250 degrees C. The Nd doped films also show acceptable selectivity in presence of Methane, CO2, NO2 and Ammonia, in the studied concentration. The Raman and Photoluminescence spectra show that the ratio of in-plane to bridging oxygen vacancies is highest for 3 wt% Nd doped sample, influencing the gas sensing action.
机译:通过雾化器辅助喷雾热解工艺沉积了0.1%至6 wt%的掺钕(Nd)的纳米结构薄膜,以研究气体传感能力。 X射线衍射分析表明,适度添加Nd有助于薄膜的晶体生长,从而导致晶格应变和氧空位的显着增加,从而改善了通过晶粒的电荷传输。掺杂3%(重量)的Nd的薄膜以(301),(200)和(110)的最佳取向生长,这由透射电子显微照片支持。场发射扫描显微照片揭示了由不同尺寸的团聚颗粒组成的薄膜形态的变化。 AFM图像提供了通过Nd掺杂调节表面粗糙度的可能性。掺杂3 wt%的Nd的薄膜在500 ppm的LPG中显示出最大的99.8%的响应,在350摄氏度的工作温度下,响应时间和恢复时间分别为5 s和10s。LPG响应持续存在,值为63甚至在降低的工作温度为250摄氏度下也可以达到%。在研究浓度下,掺杂Nd的薄膜在甲烷,CO2,NO2和氨的存在下也显示出可接受的选择性。拉曼光谱和光致发光光谱表明,掺入3%(重量)的Nd的样品的面内氧空位与桥接氧空位之比最高,影响了气体感应作用。

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  • 来源
    《Journal of materials science》 |2019年第17期|16579-16595|共17页
  • 作者单位

    Mar Athanasius Coll Autonomous Res Ctr Phys Kothamangalam Coll PO Kothamangalam 686666 Kerala India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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